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N501Y谱系的出现和持续趋同进化与SARS-CoV-2选择格局的重大全球转变相吻合。

The emergence and ongoing convergent evolution of the N501Y lineages coincides with a major global shift in the SARS-CoV-2 selective landscape.

作者信息

Martin Darren P, Weaver Steven, Tegally Houryiah, San Emmanuel James, Shank Stephen D, Wilkinson Eduan, Lucaci Alexander G, Giandhari Jennifer, Naidoo Sureshnee, Pillay Yeshnee, Singh Lavanya, Lessells Richard J, Gupta Ravindra K, Wertheim Joel O, Nekturenko Anton, Murrell Ben, Harkins Gordon W, Lemey Philippe, MacLean Oscar A, Robertson David L, de Oliveira Tulio, Kosakovsky Pond Sergei L

机构信息

Institute of Infectious Diseases and Molecular Medicine, Division Of Computational Biology, Department of Integrative Biomedical Sciences, University of Cape Town, South Africa.

Institute for Genomics and Evolutionary Medicine, Department of Biology, Temple University, Pennsylvania, USA.

出版信息

medRxiv. 2021 Jul 25:2021.02.23.21252268. doi: 10.1101/2021.02.23.21252268.

Abstract

The emergence and rapid rise in prevalence of three independent SARS-CoV-2 "501Y lineages", B.1.1.7, B.1.351 and P.1, in the last three months of 2020 prompted renewed concerns about the evolutionary capacity of SARS-CoV-2 to adapt to both rising population immunity, and public health interventions such as vaccines and social distancing. Viruses giving rise to the different 501Y lineages have, presumably under intense natural selection following a shift in host environment, independently acquired multiple unique and convergent mutations. As a consequence, all have gained epidemiological and immunological properties that will likely complicate the control of COVID-19. Here, by examining patterns of mutations that arose in SARSCoV-2 genomes during the pandemic we find evidence of a major change in the selective forces acting on various SARS-CoV-2 genes and gene segments (such as S, nsp2 and nsp6), that likely coincided with the emergence of the 501Y lineages. In addition to involving continuing sequence diversification, we find evidence that a significant portion of the ongoing adaptive evolution of the 501Y lineages also involves further convergence between the lineages. Our findings highlight the importance of monitoring how members of these known 501Y lineages, and others still undiscovered, are convergently evolving similar strategies to ensure their persistence in the face of mounting infection and vaccine induced host immune recognition.

摘要

2020年最后三个月,三种独立的严重急性呼吸综合征冠状病毒2(SARS-CoV-2)“501Y谱系”,即B.1.1.7、B.1.351和P.1的出现及流行率迅速上升,引发了人们对SARS-CoV-2适应不断增强的人群免疫力以及疫苗和社交距离等公共卫生干预措施的进化能力的新担忧。引发不同501Y谱系的病毒,大概是在宿主环境发生变化后,在强烈的自然选择作用下,独立获得了多个独特且趋同的突变。因此,所有这些病毒都获得了流行病学和免疫学特性,这可能会使2019冠状病毒病(COVID-19)的控制复杂化。在这里,通过研究大流行期间SARS-CoV-2基因组中出现的突变模式,我们发现了作用于各种SARS-CoV-2基因和基因片段(如刺突蛋白(S)、非结构蛋白2(nsp2)和非结构蛋白6(nsp6))的选择压力发生重大变化的证据,这可能与501Y谱系的出现同时发生。除了涉及持续的序列多样化外,我们还发现有证据表明,501Y谱系正在进行的适应性进化的很大一部分还涉及谱系之间的进一步趋同。我们的研究结果强调了监测这些已知的501Y谱系成员以及其他尚未发现的成员如何趋同进化出相似策略以确保它们在面对不断增加的感染和疫苗诱导的宿主免疫识别时持续存在的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5218/8323162/28ab47689929/nihpp-2021.02.23.21252268v3-f0001.jpg

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